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Antipain-mediated suppression of X-ray-induced chromosomal aberrations in human lymphocytes
V Afzal1, J K Wiencke, S Wolff
1Laboratory of Radiobiology and Environmental Health, University of California, San Francisco 94143.
Abstract:
The protease inhibitor antipain is known to modulate the number of chromosomal aberrations induced by the S-phase-dependent alkylating agent N-methyl-N'-nitro-N-nitrosoguanidine. Experiments have now been carried out to see if antipain might also effect the yield of aberrations induced by X-rays, which are S-independent and thus produce chromosomal aberrations by a different mechanism. The results show that human lymphocytes exposed to 0.4 or 1.5 Gy of X-rays at 48 h of culture and fixed at 3, 6, 8, 10 or 12 h thereafter contain 27-52% fewer chromatid breaks if the cells are also treated with antipain before irradiation. Because previous studies postulated that antipain could affect the induction of chromosomal aberrations by suppressing free radical reactions within cells, we also tested whether antipain affects X-ray-induced aberrations when present only during the time of irradiation, as is the case for free radical scavengers, such as L-cysteine. The results indicate that, in contrast to L-cysteine, antipain can suppress the induction of X-ray-induced aberrations even when administered as late as 2 h after irradiation, suggesting that the effects of antipain on aberrations are not attributable to its interference with short-lived radicals within the cells. Although the exact mechanism whereby antipain decreases the yield of chromosome aberrations induced by the S-independent agent X-rays is unknown, these data indicate that the formation of chromosome aberrations by S-independent agents too can involve an antipain-sensitive process.
Insights
The protease inhibitor antipain reduces X-ray-induced chromosomal aberrations in human lymphocytes. This suggests antipain influences DNA damage repair, even when administered hours after radiation exposure.
Area of Science:
- Molecular Biology
- Radiation Biology
- Genetics
Background:
- Protease inhibitors, like antipain, are known to influence chromosomal aberration yields.
- Antipain's effect on aberrations induced by S-phase-dependent agents is established.
- The mechanism of X-ray-induced aberrations differs from S-phase-dependent agents.
Purpose of the Study:
- To investigate if antipain modulates chromosomal aberrations induced by X-rays.
- To explore the mechanism of antipain's effect on X-ray-induced aberrations.
- To determine if antipain's action involves free radical suppression.
Main Methods:
- Human lymphocytes were exposed to X-rays (0.4 or 1.5 Gy) at 48 h of culture.
- Cells were treated with antipain before irradiation or at various time points post-irradiation.
- Chromatid breaks were quantified at different time points after irradiation.
Main Results:
- Antipain treatment reduced X-ray-induced chromatid breaks by 27-52%.
- Antipain suppressed X-ray-induced aberrations even when administered 2 hours after irradiation.
- Unlike L-cysteine, antipain's effect was not limited to the irradiation period.
Conclusions:
- Antipain significantly decreases chromosomal aberrations induced by X-rays, an S-independent agent.
- Antipain's mechanism is unlikely to be solely due to scavenging short-lived free radicals.
- X-ray-induced chromosomal aberration formation involves an antipain-sensitive process.